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What would happen if Salt Lake dries up?

However, the most deleterious effect of the Great Salt Lake drying up is that the air surrounding Salt Lake City could sporadically become poisonous. Since the bed of the Great Salt Lake holds high levels of dangerous particles like arsenic, antimony, copper, zirconium, and various heavy metals.



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Within years, the lake's ecosystems could collapse and millions will be exposed to toxic dust contained within the drying lakebed, unless drastic steps are taken to cut water use. A team of 32 scientists and conservationists caution that the lake could decline beyond recognition in just five years.

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A recent report found that the lake could essentially disappear within five years. As a key stopover for migrating birds, the lake's loss could undermine whole ecosystems.

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Water experts say it's going to take more than one big year to fill the Great Salt Lake. SALT LAKE CITY — Ever since The Great Salt Lake hit its lowest water level on record in November 2022, concerns over things like arsenic in the exposed lake bed have only grown.

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According to a recent study by Brigham Young University, it's possible that Great Salt Lake could dry up completely in the next five years.

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SALT LAKE CITY (ABC4) — The Utah Division of Water Resources is sharing good news about the impacts all the rain is having on the Great Salt Lake, whose water levels reached a historic low last year.

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Lake Levels Due to its shallowness (an average of 14 feet deep and a maximum of 35 feet deep), the water level can fall dramatically during dry years and rise during wet years. When snowpack melts in the spring, the lake usually rises about 2 feet.

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Climate change isn't only causing wildfires and massive heat waves, but it's drying up vital bodies of water such as the Great Salt Lake bordering the Salt Lake Valley.

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The shallow bottom of Great Salt Lake supports a microbial carpet that harness the sun's energy through the process of photosynthesis. This carpet is made up of a community of microbes, including several types of cyanobacteria (also known as blue-green algae), algae and other organisms.

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However, the most deleterious effect of the Great Salt Lake drying up is that the air surrounding Salt Lake City could sporadically become poisonous.

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Even in 'wet' years, conservation, policy changes are paramount to restore the lake
  1. Leverage the wet years.
  2. Set a lake elevation range goal.
  3. Invest in conservation.
  4. Invest in water monitoring and modeling.
  5. Develop a holistic water management plan.
  6. Request an in-depth analysis of policy options.


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Great Salt Lake is between 3.5 and 8 times saltier than the ocean. The organisms that live in the water have special adaptations that allow them to survive such saline conditions. Air blocks much of the sun's DNA-damaging ultraviolet light from reaching the surface of the earth.

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According to USGS, five businesses extract salt and other minerals from the lake through solar evaporation ponds. No food-grade salt comes from the lake; Great Salt Lake salt is used for deicers, road salt, water softeners and salt licks for livestock.

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The lake provides major economic benefits The Great Salt Lake doesn't just benefit birds — it helps the economy. According to the Utah Division of Water Resources, the lake's annual economic output is $1.32 billion. The total labor income is $375.1 million and it's responsible for 7,706 jobs.

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To augment the declining Great Salt Lake , a pipeline has been proposed to pump seawater from the Pacific Ocean. As extreme as it sounds, the idea is still being considered almost a year after it was first raised.

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Impressive winter precipitation and record-breaking snowpack have undoubtedly improved the situation of Great Salt Lake,” Hasenyager said. “However, it's important to note that it will take much more than one above-average winter to fully replenish the lake's water levels and address our long-term challenges.”

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The precipitous drop in water levels, which has shrunk the Great Salt Lake's footprint by half in the last decades, stems from a two-fold problem: Climate change has decimated the mountain streams that feed the lake, while demand for that same freshwater has ballooned for new development, agriculture and industry.

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